A Wafer-Scale Heterogeneous III-V-on-Silicon Nitride Quantum Photonic Platform
Abstract
Heterogeneous integration of gain and strongly nonlinear materials with ultra-low-loss silicon nitride (SiN) photonics offers a route to scalable quantum circuits, but concurrent wafer-scale manufacturability, low interlayer loss, and high performance have been challenging to realize. Here we demonstrate a wafer-scale III-V-on-SiN quantum photonic platform that directly integrates III-V layers to foundry-fabricated SiN circuits. The SiN layer provides 200-300 nm thick waveguides with dB/m loss and a mature passive photonics ecosystem, while III-V materials provide large and nonlinearities for parametric gain, frequency conversion and quantum light generation. Adiabatic interlayer couplers yield mdB loss to InGaP waveguides and resonators with intrinsic quality factors exceeding , enabling brighter entanglement sources and efficient nonlinear conversion on SiN. Integrated components--including low-loss beam splitters, waveguide crossers, and tunable interferometers--are complemented by III-V lasers and InP photodetectors with amplifiers achieving up to quantum efficiency and GHz bandwidth. This architecture unites ultra-efficient sources, nonlinear elements and detectors on a wafer-scale, low-loss platform, establishing a path toward large-scale, low-noise quantum photonic systems.
Keywords
Cite
@article{arxiv.2605.17738,
title = {A Wafer-Scale Heterogeneous III-V-on-Silicon Nitride Quantum Photonic Platform},
author = {Lillian Thiel and Boqiang Shen and Jasper R. Venneberg and Melissa A. Guidry and Nic Arnaud and Adam Slater and Lucas Wang and Xuefeng Li and Josh Castro and Yiming Pang and Max Meunier and Sahil D. Patel and Yang Shen and Theodore Morin and Igor Kudelin and Bowen Song and Kaustubh Asawa and John E. Bowers and Kerry Vahala and Nergis Mavalvala and Xinghui Yin and Steven Bowers and Minh A. Tran and Tin Komljenovic and Galan Moody},
journal= {arXiv preprint arXiv:2605.17738},
year = {2026}
}